论文标题
在MNBI2TE4的拓扑表面状态下检测磁隙4
Detection of magnetic gap in the topological surface states of MnBi2Te4
论文作者
论文摘要
最近,固有的抗铁磁拓扑绝缘子MNBI2TE4通过托管量子异常的霍尔效应,斧头绝缘体状态和其他量子相,引起了强烈的研究兴趣,并通过托管量子异常的霍尔效应,轴心霍尔效应,从而在物理和材料科学方面取得了很大进展。意识到这些量子状态的一种重要成分是由MNBI2TE4表面的平面外铁磁性引起的拓扑表面状态的磁隙。但是,表面隙的实验观察结果仍然有争议。在这里,我们通过点接触隧道光谱显示了表面隙的观察。与理论计算一致,间隙大小约为50 MEV,随着样品随温度升高而变成顺磁性,它消失了。通过平面磁场的样品表面上的点接触连接来检测磁磁性滞后,证实了表面铁磁磁性。此外,来自铁磁性的非零转运自旋极化由点接触Andreev反射光谱决定。结合了这些结果,揭示了MNBI2TE4拓扑表面状态的磁性诱导的间隙。
Recently, intrinsic antiferromagnetic topological insulator MnBi2Te4 has drawn intense research interest and leads to plenty of significant progress in physics and materials science by hosting quantum anomalous Hall effect, axion insulator state, and other quantum phases. An essential ingredient to realize these quantum states is the magnetic gap in the topological surface states induced by the out-of-plane ferromagnetism on the surface of MnBi2Te4. However, the experimental observations of the surface gap remain controversial. Here, we report the observation of the surface gap via the point contact tunneling spectroscopy. In agreement with theoretical calculations, the gap size is around 50 meV, which vanishes as the sample becomes paramagnetic with increasing temperature. The magnetoresistance hysteresis is detected through the point contact junction on the sample surface with an out-of-plane magnetic field, substantiating the surface ferromagnetism. Furthermore, the non-zero transport spin polarization coming from the ferromagnetism is determined by the point contact Andreev reflection spectroscopy. Combining these results, the magnetism-induced gap in topological surface states of MnBi2Te4 is revealed.